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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Analysis of Genetic Diversity in Pongamia [Pongamia pinnata (L) Pierrre] using AFLP Markers
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Analysis of Genetic Diversity in Pongamia [Pongamia pinnata (L) Pierrre] using AFLP Markers

机译:利用AFLP标记分析Pongamia [Pongamia pinnata(L)Pierrre]的遗传多样性

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In recent years, Pongamia has been considered as important renewable source of biodiesel, however not much molecular information is available in this species. Molecular characterization of this legume tree will enhance our understanding in improving the optimal yields of oil through breeding and enable us to meet the future demands for biodiesel. To assess the molecular genetic diversity in 48 Pongamia pinnata accessions collected from six different states of India, amplified fragment length polymorphism (AFLP) marker system was employed. Five AFLP primer combinations produced 520 discernible fragments, of which 502 (96.5%) were polymorphic. AFLP primer informativeness was estimated evaluating four parameters namely polymorphism information content (PIC), effective multiplex ratio (EMR), marker index (MI) and resolving power (RP). In total, 51 unique fragments were detected of which 19 unique fragments were observed with primer combination E-ACG / M-CTA. Although neighbour joining (NJ) method did not group accessions strictly according to their region of collection, a good level of genetic diversity was observed in examined germplasm. However, accessions collected from Karnataka showed comparatively higher diversity than accessions from other states. The diverse accessions identified in this study may be useful in Pongamia pinnata improvement to meet the future demands of biodiesel.
机译:近年来,庞加米被认为是生物柴油的重要可再生资源,但是该物种没有太多的分子信息。这种豆科树的分子特征将增进我们对通过育种提高油的最佳产量的理解,并使我们能够满足未来对生物柴油的需求。为了评估从印度六个不同州收集的48个Pongamia pinnata品种的分子遗传多样性,采用了扩增片段长度多态性(AFLP)标记系统。五个AFLP引物组合产生了520个可识别的片段,其中502个(96.5%)是多态性的。评估AFLP引物的信息性,评估四个参数,即多态性信息含量(PIC),有效多路复用率(EMR),标记指数(MI)和分辨力(RP)。总共检测到51个独特片段,其中使用引物组合E-ACG / M-CTA观察到19个独特片段。尽管邻居加入法(NJ)并未严格按照收集区域对种质进行分组,但在检测的种质中观察到良好的遗传多样性。但是,从卡纳塔克邦收集的种质显示出比其他州的种质更高的多样性。在这项研究中鉴定出的不同种质可能有助于改善南美黑松(Pongamia pinnata),以满足未来对生物柴油的需求。

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